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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Relative Resolution: A Computationally Efficient Implementation in LAMMPS
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Relative Resolution: A Computationally Efficient Implementation in LAMMPS

机译:相对分辨率:LAMMPS的计算有效地实现

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Recently, a novel type of multiscale simulation, called Relative Resolution (RelRes), was introduced. In a single system, molecules switch their resolution in terms of their relative separation, with near neighbors interacting via fine-grained potentials yet far neighbors interacting via coarse-grained potentials; notably, these two potentials are analytically parametrized by a multipole approximation. This multiscale approach is consequently able to correctly retrieve across state space the structural and thermal, as well as static and dynamic, behavior of various nonpolar mixtures. Our current work focuses on the practical implementation of RelRes in LAMMPS, specifically for the commonly used Lennard-Jones potential. By examining various correlations and properties of several alkane liquids, including complex solutions of alternate cooligomers and block copolymers, we confirm the validity of this automated LAMMPS algorithm. Most importantly, we demonstrate that this RelRes implementation gains almost an order of magnitude in computational efficiency, as compared with conventional simulations. We thus recommend this novel LAMMPS algorithm for anyone studying systems governed by Lennard-Jones interactions.
机译:最近,一种新型的多尺度模拟被称为相对分辨率(RelRes)。在单个系统中,分子根据其相对分离来切换其分辨率,近邻通过细粒度势相互作用,而远邻通过粗粒度势相互作用;值得注意的是,这两种势通过多极近似解析参数化。因此,这种多尺度方法能够跨状态空间正确检索各种非极性混合物的结构和热行为,以及静态和动态行为。我们目前的工作重点是在LAMMPS中实际实现RelRes,特别是针对常用的Lennard-Jones势。通过检查几种烷烃液体的各种相关性和性质,包括交替低聚物和嵌段共聚物的复杂溶液,我们确认了这种自动LAMMPS算法的有效性。最重要的是,我们证明,与传统模拟相比,这种RelRes实现的计算效率几乎提高了一个数量级。因此,我们向任何研究Lennard-Jones相互作用系统的人推荐这种新型LAMMPS算法。

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